Menu

Formulas Finding Response Two Transfer Functions Calculated Follows Sb Ku K M 2 5 2 4m M B Q43834691

please help me run this matlab code and understand why its notrunning.
This is the formulas for finding response. The two transfer functions will be calculated as follows: - ((SB,, + Ku) (K,+M, $2EDITOR PUBLISH VIEW nawunabdulazeez Documents ► MATLAB 7 Editor - /Users/animawunabdulazeez/Documents/MATLAB/untitled6.mi untcontinuation.PUBLISH VIEW azeez Documents MATLAB Editor- /Users/animawunabdulazeez/Documents/MATLAB/untitled6.my untitled6. m x + X WorksThis is the formulas for finding response. The two transfer functions will be calculated as follows: – ((SB,, + Ku) (K,+M, $2 +5))/(2_,4m, + (M, Bus + B.M. + M.,, B.) 5* + (K,M,+ K, M, + B, B, + M, K,)+ (Bus K45,:)S+KK) = ($%BB. + (buk,+K, B) 5+ k,,<)/ (My S4 M+ (M. Bus + B.M. + M. B) 5* + (KUM, | + K, M, + B, B+ M.,5K) 52 + (Bus K+K, 8)S + KK) EDITOR PUBLISH VIEW nawunabdulazeez Documents ► MATLAB 7 Editor – /Users/animawunabdulazeez/Documents/MATLAB/untitled6.mi untitled6. m x + Meno clear all ks = 900;% Suspension Stiffness (N/m) kt = 2500; kus = kt;% Tire stiffness (N/m) ms = 2.45;% Sprung Mass (kg) mu = 1;% Unsprung Mass (kg) mus = m;% Unsprung Mass (kg) bs = 7.5;% Suspension Inherent Damping coefficient (sec/m) bus = 5; Tire Inhenrent Damping coefficient (sec/m) S = tf((1,0), [1]); O&NNS zus= ((s*bus)+kus)*(ks+ms*(5^2)+bs*s); zra(mus*(S4)*ms (ms bus+bs msmussbs) S^3+(kusimseksems+busebstmuseks c1=(zus/zr); 25= ((5^2)+bus*bs+(bus*ks+kusubs)*s+kus*ks); c2=(zs/zr); damp(zus) damp(zs) Command Window Model Predictive Control Toolbox Signal Processing Toolbox (line 17) Error in untitled S = tf([1,01. (11); PUBLISH VIEW azeez Documents MATLAB Editor- /Users/animawunabdulazeez/Documents/MATLAB/untitled6.my untitled6. m x + X Works Name spension Stiffness (N/m) W e stiffness (N/m) >rung Mass (kg) ung Mass (kg) sprung Mass (kg) spension Inherent Damping coefficient (sec/m) • Inhenrent Damping coefficient (sec/m) [1]); in kus)*(ks+ms*(5^2)+bs*); ms+(ms bus+bs mstmusubs)s^3+(kus ms+ks*ms+bus bs+mus*ks)*(3^2)+(busuks+kusubs)*s+kus*ks); subs+(bus*ks+kusubs)*5+kus*ks); Command Window Model Predictive Control Toolbox Signal Processing Toolbox Error in untitled6 (line 17) S = tf((1,0], [1]); Show transcribed image text This is the formulas for finding response. The two transfer functions will be calculated as follows: – ((SB,, + Ku) (K,+M, $2 +5))/(2_,4m, + (M, Bus + B.M. + M.,, B.) 5* + (K,M,+ K, M, + B, B, + M, K,)+ (Bus K45,:)S+KK) = ($%BB. + (buk,+K, B) 5+ k,,rung Mass (kg) ung Mass (kg) sprung Mass (kg) spension Inherent Damping coefficient (sec/m) • Inhenrent Damping coefficient (sec/m) [1]); in kus)*(ks+ms*(5^2)+bs*); ms+(ms bus+bs mstmusubs)s^3+(kus ms+ks*ms+bus bs+mus*ks)*(3^2)+(busuks+kusubs)*s+kus*ks); subs+(bus*ks+kusubs)*5+kus*ks); Command Window Model Predictive Control Toolbox Signal Processing Toolbox Error in untitled6 (line 17) S = tf((1,0], [1]);

Expert Answer


Answer to This is the formulas for finding response. The two transfer functions will be calculated as follows: – ((SB,, + Ku) (K,+…

OR